PEER / Biological Fractal Evolution: The Axis of Aging
Biological Fractal Evolution: The Axis of Aging Abstract Life emerges fractally, manifesting as self-similar patterns across scales from molecular to organismal levels. From a single fertilized cell, the zygote undergoes a cascade of doublings that embody the universal law of equilibrium, driving outward expansion in a centrifugal manner. This developmental bloom is counterbalanced by an intrinsic genomic resistance: the progressive shortening of telomeres with each cell division. These dual dynamics—expansive fractal division and contractive telomere erosion—form a biological axis that governs growth, maturation, and aging. This paper introduces biological fractal evolution as the interplay between outward equilibrium forces and inward encoded limits, positioning telomeres as the pivotal axis of aging within the Swygert Theory of Everything AO (TSTOEAO). Drawing on fractal geometry in embryogenesis and telomere biology, we explore how these processes echo cosmic structures like galact...